Results 141 to 150 of about 49,479 (256)
Highly Sensitive Tunable Magnetometer Based on Superconducting Quantum Interference Device. [PDF]
Vettoliere A, Granata C.
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Flexible Wide Bandgap Electrode System for In situ Cell Sensing and Irreversible Electroporation
The paper reports the design and wafer‐level microfabrication of a long‐lived, flexible 3C‐SiC electrode capable of sensitive and in situ cell sensing, as well as electroporation ablation. The work demonstrates a biocompatible and durable electrode platform that can perform reliable electrical interfacing with biological tissues over extended periods ...
Minh Anh Huynh +3 more
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Quantum Interference Supernodes, Thermoelectric Enhancement, and the Role of Dephasing. [PDF]
Bergfield JP.
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Quantum Interference and Contact Effects in the Thermoelectric Performance of Anthracene-Based Molecules. [PDF]
Hamill JM +11 more
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Nanoporous silica nanoparticles incorporated in nanoporous platinum offer the possibility for implant‐associated drug delivery from neuronal electrodes. ABSTRACT Sensorineural hearing loss, resulting from damage to the hair cells of the inner ear, profoundly impairs quality of life.
Mosaieb Habib +10 more
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Tunable phononic quantum interference induced by two-dimensional metals. [PDF]
Zhang K +13 more
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ABSTRACT Real‐time insight into local chemistry is critical for reliable part quality in additive manufacturing, especially laser powder bed fusion (PBF‑LB/M), where rapid thermal cycles and localized evaporation can undermine part performance. Optical emission spectroscopy (OES) offers non‑intrusive, in situ plume monitoring, but detection geometry ...
Philipp Gabriel +4 more
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Quantum interference and occupation control in high harmonic generation from monolayer WS<sub>2</sub>. [PDF]
Kim M +15 more
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Molecular ensemble junctions with inter-molecular quantum interference. [PDF]
Li P, Selzer Y.
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Laser‐assisted synthesis enables rapid (within 1 h) and high‐yield (≥90%) production of Co‐MOFs with mesoporous structures, tunable magnetic and optical properties, and efficient adsorption of N2, CH4, and CO2 for low‐energy gas separation. DFT calculations elucidate the electronic structure and adsorption behavior.
Saliha Mutlu +10 more
wiley +1 more source

